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David S. Sholl

David S. Sholl

Verified

Editor-in-Chief, AIChE - American Institute of Chemical Engineers

Atlanta

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Journalist Type

Seniority Positions

Content

Total articles 17

  • Machine Learning and IAST-Aided High-Throughput Screening of Cationic and Silica Zeolites for Alkane Capture, Storage, and Separations

    By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified| dx.doi.org@ As the demand for clean energy increases, environmentally friendlier methods for separation, capture, and use of hydrocarbons and alkane gases in particular have become important to the petrochemical industry. (1−6) These separations are traditionally carried out using energy-intensive distillation, and adsorption processes in porous materials such as zeolites are attractive as potential alternative methods for separation and purification.

    By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified · dx.doi.org

    Jan. 04, 2024

  • Machine Learning Models for Predicting Molecular Diffusion in Metal-Organic Frameworks Accounting for the Impact of Framework Flexibility

    By Yuhan Yang, Zhenzi Yu, David S. Sholl Verified, Shuvo Jit| ACS Publications@ Compared with the traditional heat-driven separation technologies like distillation, evaporation, and drying, diffusion-based separations have the potential to be more energy efficient and therefore lower emissions and pollution. (1−4) In this approach, mixtures of molecules are separated by porous materials based on their geometric or chemical properties in a diffusion process. Finding materials that have the “right” pores is critical for diffusion-based separation to succeed.

    By Yuhan Yang, Zhenzi Yu, David S. Sholl Verified, Shuvo Jit · ACS Publications

    Sep. 11, 2023

  • Machine Learning and IAST-Aided High-Throughput Screening of Cationic and Silica Zeolites for Alkane Capture, Storage, and Separations

    By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified| dx.doi.org@ As the demand for clean energy increases, environmentally friendlier methods for separation, capture, and use of hydrocarbons and alkane gases in particular have become important to the petrochemical industry. (1−6) These separations are traditionally carried out using energy-intensive distillation, and adsorption processes in porous materials such as zeolites are attractive as potential alternative methods for separation and purification.

    By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified · dx.doi.org

    Jan. 04, 2024

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